Department of Genetic Engineering, School of Bioengineering, SRM Institute of Science and Technology, Kattankulathur, Chennai, Tamilnadu, 603203, India.
Department of Industrial Biotechnology, Government College of Technology, Coimbatore, Tamilnadu, 641013, India.
Mol Biol Rep. 2022 Jan;49(1):629-646. doi: 10.1007/s11033-021-06805-z. Epub 2021 Oct 20.
Thermotolerant microbes are a group of microorganisms that survive in elevated temperatures. The thermotolerant microbes, which are found in geothermal heat zones, grow at temperatures of or above 45°C. The proteins present in such microbes are optimally active at these elevated temperatures. Hence, therefore, serves as an advantage in various biotechnological applications. In the last few years, scientists have tried to understand the molecular mechanisms behind the maintenance of the structural integrity of the cell and to study the stability of various thermotolerant proteins at extreme temperatures. Proteomic analysis is the solution for this search. Applying novel proteomic tools determines the proteins involved in the thermostability of microbes at elevated temperatures.
Advanced proteomic techniques like Mass spectrometry, nano-LC-MS, protein microarray, ICAT, iTRAQ, and SILAC could enable the screening and identification of novel thermostable proteins.
This review provides up-to-date details on the protein signature of various thermotolerant microbes analyzed through advanced proteomic tools concerning relevant research articles. The protein complex composition from various thermotolerant microbes cultured at different temperatures, their structural arrangement, and functional efficiency of the protein was reviewed and reported.
This review provides an overview of thermotolerant microbes, their enzymes, and the proteomic tools implemented to characterize them. This article also reviewed a comprehensive view of the current proteomic approaches for protein profiling in thermotolerant microbes.
耐热微生物是一组能够在高温下生存的微生物。耐热微生物存在于地热热区,在 45°C 或以上的温度下生长。这些微生物中的蛋白质在这些高温下最佳活跃。因此,在各种生物技术应用中具有优势。在过去的几年中,科学家们试图了解维持细胞结构完整性的分子机制,并研究各种耐热蛋白质在极端温度下的稳定性。蛋白质组学分析是解决这一问题的方法。应用新型蛋白质组学工具可以确定参与微生物在高温下耐热性的蛋白质。
高级蛋白质组学技术,如质谱、纳升 LC-MS、蛋白质微阵列、ICAT、iTRAQ 和 SILAC 等,可以用于筛选和鉴定新的耐热蛋白质。
本综述提供了有关通过高级蛋白质组学工具分析的各种耐热微生物的蛋白质特征的最新详细信息,涉及相关研究文章。综述了来自不同温度下培养的各种耐热微生物的蛋白质复合物组成、它们的结构排列以及蛋白质的功能效率。
本综述提供了耐热微生物及其酶的概述,以及用于对其进行表征的蛋白质组学工具。本文还综述了当前用于耐热微生物蛋白质谱分析的综合蛋白质组学方法。